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Parity–time-symmetric circular Bragg lasers: a proposal and analysis

机译:奇偶时间对称圆形布拉格激光器:建议和分析

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摘要

We propose a new type of semiconductor lasers by implementing the concept of parity–time symmetry in a two-dimensional circular Bragg grating structure, where both the real and imaginary parts of the refractive index are modulated along the radial direction. The laser modal properties are analyzed with a transfer-matrix method and are verified with numerical simulation of a practical design. Compared with conventional distributed-feedback lasers with modulation of only the real part of refractive index, the parity–time-symmetric circular Bragg lasers feature reduced threshold and enhanced modal discrimination, which in combination with the intrinsic circularly symmetric, large emission aperture are clear advantages in applications that require mode-hop-free, high-power, single-mode laser operation.
机译:通过在二维圆形布拉格光栅结构中实现奇偶-时间对称性的概念,我们提出了一种新型的半导体激光器,其中,折射率的实部和虚部均沿径向方向进行调制。用传递矩阵法分析了激光的模态特性,并通过实际设计的数值模拟对其进行了验证。与仅对折射率的实部进行调制的常规分布式反馈激光器相比,奇偶时间对称的圆形布拉格激光器具有阈值降低和模态辨别力增强的特点,与固有的圆形对称,大发射孔径相结合,具有明显的优势在需要无跳模,高功率,单模激光操作的应用中。

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